参数资料
型号: NCP1654BD133R2G
厂商: ON Semiconductor
文件页数: 17/23页
文件大小: 228K
描述: IC PFC CCM 133KHZ 8-SOIC
标准包装: 2,500
模式: 连续导电(CCM)
频率 - 开关: 120kHz ~ 146kHz
电流 - 启动: 75µA
电源电压: 9 V ~ 20 V
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
供应商设备封装: 8-SOICN
包装: 带卷 (TR)
其它名称: NCP1654BD133R2G-ND
NCP1654BD133R2GOSTR
NCP1654
http://onsemi.com
17
The feedback signal V
fb
 represents the output voltage
V
out
  and will be used in the output voltage regulation,
Overvoltage protection (OVP), fast transient response, and
Undervoltage protection (UVP)
Output Voltage Regulation
NCP1654   uses   a   high   gain   Operational   Trans
conductance Amplifier (OTA) as error amplifier. Refer to
Figure 38, the output of OTA V
control
 operating range is
from V
CONTROL(min)
 to V
CONTROL(max)
.
Fast Transient Response
Given the low bandwidth of the regulation block, the
output voltage of PFC stages may exhibit excessive over or
undershoots because of abrupt load or input voltage
variations (such as startup duration). As shown in
Figure 40, if the output voltage is out of regulation,
NCP1654 has 2 functions to maintain the output voltage
regulation.
Figure 40. OVP and Fast Transient Response
+
-
+
-
95%
V
REF
V
REF
OTA
6
5
V
control
V
out
 Low Detect
200 mA
Vdd
?0 mA
+
-
105%
V
REF
V
out
+
OVP
V
fb
R
fbU
R
fbL
C
FB
" Overvoltage Protection: When V
fb
 is higher than
105% of V
REF
 (i.e. V
out
 > 105% of nominal output
voltage), the Driver output of the device goes low for
protection. The circuit automatically resumes
operation when V
fb
 becomes lower than 105% of
V
REF
. If the nominal V
out
 is set at 390 V, then the
maximum output voltage is 105% of 390 V = 410 V.
Hence a cost & size effective bulk capacitor of lower
voltage rating is suitable for this application,
" Dynamic response enhancer: NCP1654 drastically
speeds up the regulation loop by its internal 200 mA
enhanced current source when the output voltage is
below 95% of its regulation level. Under normal
condition, the maximum sink and source of output
current capability of OTA is around 28 mA. Thanks to
the V
out
 low detect block, when the V
fb
 is below
95% V
REF
, an extra 200 mA current source will raise
V
control
 rapidly. Hence prevent the PFC output from
dropping too low and improve the transient response
performance. The relationship between current
flowing in/out V
control
 pin and V
fb
 is as shown in
Figure 41.
It is recommended to add a typical 100 pF capacitor C
FB
decoupling capacitor next to feedback pin to prevent from
noise impact.
250
200
150
100
50
0
50
2
2.2
2.4
2.6
2.8
3
Vfb
Figure 41. V
fb
 vs. Current Flowing in/out from V
control
 Pin
No DRV when
V
fb
 is above
105% V
REF
200 mA raises
V
control
 rapidly
when V
fb
 is below
95% V
REF
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